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In Vivo HOXB7 Gene Silencing and Cotreatment with Tamoxifen for Luminal A Breast Cancer Therapy
Ana Beatriz Caribé Dos Santos Valle1, Fábio Fernando Alves da Silva2, Maria Ângela Pepe Carneiro2
1Laboratório de Desenvolvimento de Sistemas Nanoestruturados, Faculdade de Farmácia, Universidade Federal de Juiz de Fora, Rua José Lourenço Kelmer, Juiz de Fora 36036-900, Brazil.
Background:
Acquired resistance and adverse effects are some of the challenges faced by thousands of Luminal A breast cancer patients under tamoxifen (TMX) treatment. Some authors associate the overexpression of HOXB7 with TMX resistance in this molecular subtype, and the knockdown of this gene could be an effective strategy to regain TMX sensitivity. Therefore, we used calcium phosphate hybrid nanoparticles (HNP) for the delivery of short interfering RNA molecule (siRNA) complementary to the HOXB7 gene and evaluated the RNA interference (RNAi) effects associated with TMX treatment in breast cancer in vivo.
Methods:
HNP were prepared by the self-assembly of a methoxy-poly (ethylene glycol)-block-poly (L-glutamic acid) copolymer (PEG-pGlu) and the coprecipitation of CaPO4 to incorporate siRNA. The in vitro cell viability and migration were evaluated prior to in vivo experiments. Further, animals bearing early-stage and advanced Luminal A breast cancer were treated with HNP-siHOXB7, HNP-siHOXB7 + TMX, and TMX. Antitumoral activity and gene expression were evaluated following histopathological, hematological, and biochemical analysis.
Results:
The HNP were efficient in delivering the siRNA in vitro and in vivo, whilst HOXB7 silencing associated with TMX administration promoted controlled tumor growth, as well as a higher survival rate and reduction in immuno- and hepatotoxicity.
Conclusions:
Therefore, our findings suggest that HOXB7 can be an interesting molecular target for Luminal A breast cancer, especially associated with hormone therapy, aiming for adverse effect mitigation and higher therapeutic efficacy.
Insights
HOXB7 gene silencing using nanoparticles combined with tamoxifen (TMX) treatment can overcome TMX resistance in Luminal A breast cancer. This approach improves therapeutic efficacy and reduces adverse effects in patients.
Area of Science:
- Oncology
- Nanotechnology
- Molecular Biology
Background:
- Tamoxifen (TMX) treatment faces challenges of acquired resistance and adverse effects in Luminal A breast cancer.
- HOXB7 gene overexpression is linked to TMX resistance in this breast cancer subtype.
- Targeting HOXB7 offers a potential strategy to restore TMX sensitivity.
Purpose of the Study:
- To investigate the efficacy of delivering short interfering RNA (siRNA) targeting HOXB7 using hybrid nanoparticles (HNP) in combination with TMX.
- To evaluate the RNA interference (RNAi) effects and therapeutic outcomes in a Luminal A breast cancer model.
Main Methods:
- Hybrid nanoparticles (HNP) were synthesized for siRNA delivery.
- In vitro assessments of cell viability and migration were performed.
- In vivo studies involved treating tumor-bearing animals with HNP-siHOXB7, HNP-siHOXB7 + TMX, and TMX, followed by comprehensive analyses.
Main Results:
- HNP effectively delivered siRNA both in vitro and in vivo.
- HOXB7 gene silencing combined with TMX treatment led to controlled tumor growth.
- This combined approach resulted in increased survival rates and reduced toxicity.
Conclusions:
- HOXB7 is a promising molecular target for Luminal A breast cancer therapy.
- Combining HOXB7 targeting with hormone therapy can mitigate adverse effects and enhance treatment efficacy.
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